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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Preservation of cholinergic activity and prevention of neuron death by CEP-1347/KT-7515 following excitotoxic injury of the nucleus basalis magnocellularis.
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Preservation of cholinergic activity and prevention of neuron death by CEP-1347/KT-7515 following excitotoxic injury of the nucleus basalis magnocellularis.

机译:CEP-1347 / KT-7515保留了对巨大细胞核激毒性损伤后的胆碱能活性并防止神经元死亡。

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We have identified a class of small organic molecules, derived from the indolocarbazole K-252a, that promote the survival of cultured neurons. However, many of these indolocarbazoles inhibit protein kinase C and neurotrophin-activated tyrosine kinase receptors. These kinase inhibitory activities may limit the utility of these compounds for neurological disorders. A bis-ethyl-thiomethyl analogue of K-252a, CEP-1347/KT-7515, has been identified that lacks protein kinase C and tyrosine kinase receptor inhibitory activities, yet retains the ability to promote survival of cultured neurons, including cholinergic neurons derived from the basal forebrain. In the present studies, CEP-1347/KT-7515 was assessed for neurotrophic activity on basal forebrain neurons of in vivo rats following excitotoxic insult. Ibotenate infusion into the nucleus basalis magnocellularis reduced levels of choline acetyltransferase activity in the cortex, as well as reduced numbers of choline acetyltransferase-immunoreactive and retrogradely (FluoroGold)-labelled cortically-projecting neurons in the nucleus basalis. Systemically administered CEP-1347/KT-7515 attenuated the loss of cortical choline acetyltransferase activity and the loss of the number of choline acetyltransferase-immunoreactive and retrogradely-labelled FluoroGold neurons in the nucleus basalis. Moreover, CEP-1347/KT-7515 ameliorated the loss of cortical choline acetyltransferase if administration was initiated one day, but not seven days post-lesion. Together, these results demonstrate that CEP-1347/KT-7515 protects damaged cortically-projecting basal forebrain neurons from degeneration. Thus, CEP-1347/KT-7515 may have therapeutic potential in neurodegenerative diseases, such as Alzheimer's disease, in which basal forebrain cholinergic neurons degenerate.
机译:我们已经鉴定出一类源自吲哚并咔唑K-252a的小有机分子,它们可以促进培养的神经元的存活。然而,许多这些吲哚并咔唑抑制蛋白激酶C和神经营养蛋白激活的酪氨酸激酶受体。这些激酶抑制活性可能限制这些化合物用于神经系统疾病。已鉴定出K-252a的双乙基硫甲基类似物CEP-1347 / KT-7515,它缺乏蛋白激酶C和酪氨酸激酶受体抑制活性,但保留了促进培养的神经元(包括衍生的胆碱能神经元)存活的能力。来自基底前脑。在本研究中,评估了CEP-1347 / KT-7515对兴奋性中毒后体内大鼠基础前脑神经元的神经营养活性。向脑部大细胞核中注入肉毒碱会降低皮层中胆碱乙酰转移酶活性的水平,并减少基础核中胆碱乙酰转移酶免疫反应性和逆行(FluoroGold)标记的皮质投射神经元的数量。全身给药的CEP-1347 / KT-7515减弱了基底核中皮质胆碱乙酰基转移酶活性的损失以及胆碱乙酰基转移酶免疫反应和逆行标记的FluoroGold神经元数量的损失。此外,如果在病灶发生后一天(而不是病灶后七天)开始给药,CEP-1347 / KT-7515可改善皮质胆碱乙酰转移酶的丢失。在一起,这些结果表明CEP-1347 / KT-7515保护受损的皮质突出的基底前脑神经元免于变性。因此,CEP-1347 / KT-7515在神经退行性疾病(如阿尔茨海默氏病)中可能具有治疗潜力,在该疾病中基底前脑胆碱能神经元退化。

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